4-Chloro-6-methoxyquinazoline: A Versatile Pharmaceutical Intermediate for Advanced Synthesis

Discover the critical role of 4-Chloro-6-methoxyquinazoline (CAS: 50424-28-7) as a key building block in pharmaceutical R&D. Learn about its synthesis, properties, and applications in drug discovery, especially in the development of anticancer agents. As a premier supplier in China, we offer high-purity materials to advance your research.

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Key Advantages of Sourcing 4-Chloro-6-methoxyquinazoline

Enhanced Purity for Superior Results

Our 4-Chloro-6-methoxyquinazoline is rigorously tested to ensure a minimum purity of 97%, providing a reliable foundation for your demanding synthesis protocols and maximizing the success rate in your research, from intermediate synthesis to final product.

Streamlined Drug Discovery Process

Leverage this vital quinazoline derivative to accelerate your drug discovery efforts. Its well-defined reactivity profile makes it an efficient precursor for developing targeted therapies, including potential anticancer drugs, simplifying your R&D workflow.

Dependable Supply Chain from China

Benefit from a stable and efficient supply chain when you choose us as your manufacturer. We ensure timely delivery and consistent availability of 4-Chloro-6-methoxyquinazoline, supporting your production schedules and research timelines.

Broad Applications in Pharmaceutical Synthesis

Pharmaceutical Intermediates

As a key building block, 4-Chloro-6-methoxyquinazoline is extensively used in the synthesis of diverse pharmaceutical intermediates, crucial for creating advanced drug candidates.

Anticancer Drug Development

Its structural characteristics make it an ideal starting material for research into new anticancer agents, aiming to inhibit tumor cell growth and progression.

Organic Synthesis

This versatile compound plays a significant role in complex organic synthesis, enabling the creation of novel molecules with tailored properties for various scientific applications.

Material Science Research

Explored for its potential in material science due to its unique heterocyclic structure and reactivity, contributing to the innovation of new functional materials.